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首页> 外文期刊>Bulletin of the Korean Chemical Society >Nanostructures and Photoluminescence Properties of Gd2O3:Eu Red-Phosphor
Prepared via Hydrothermal Route
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Nanostructures and Photoluminescence Properties of Gd2O3:Eu Red-Phosphor
Prepared via Hydrothermal Route

机译:水热法制备的Gd 2 O 3 :Eu红磷
的纳米结构和光致发光性质

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Various nanostructures (nanorods, nanowires, nanotubes, nanospheres) of Gd0.96Eu0.04(OH)3 have been prepared by hydrothermal reactions at different pHs and temperatures. The aspect ratios of one-dimensional nanostructures are strongly dependent on the solution pH. Subsequent dehydrations of these hydroxides at higher than 500 oC lead to the formation of Gd2O3:Eu phosphors with different nanostructures. Interestingly, the shapes of nanorod and nanowire obtained under hydrothermal pressures are retained after the structural transformation from hexagonal Gd(OH)3:Eu to cubic Gd2O3:Eu at high temperatures. Gd2O3:Eu nanowires can grow up to 20-30 nm in diameter and several tens of micrometers in length. In contrast, the nanotube structure of Gd(OH)3:Eu is collapsed to produce the spherical Gd2O3:Eu nanoparticles after dehydration process. A significant change of morphology induced by an adjustment of pH of the initial solution for hydrothermal synthesis of Gd(OH)3:Eu strongly affect the photoluminescence efficiency of Gd2O3:Eu phosphor. The relative emission intensity of Gd2O3:Eu is reduced with increasing the aspect ratio of nanoparticles, the weakest emission being observed with nanowires of the highest aspect ratio.
机译:Gd0.96Eu0.04(OH)3的各种纳米结构(纳米结构,纳米线,纳米管,纳米球)已通过在不同pH和温度下进行水热反应制备。一维纳米结构的长径比强烈取决于溶液的pH。这些氢氧化物随后在高于500 oC的温度下脱水,导致形成具有不同纳米结构的Gd2O3:Eu磷光体。有趣的是,在高温下从六方Gd(OH)3:Eu转变为立方Gd2O3:Eu后,在水热压力下获得的纳米棒和纳米线的形状得以保留。 Gd2O3:Eu纳米线的直径可以增长到20-30 nm,长度可以增长几十微米。相反,在脱水过程之后,Gd(OH)3:Eu的纳米管结构塌陷以产生球形Gd2O3:Eu纳米颗粒。通过水热合成Gd(OH)3:Eu的初始溶液的pH值的调整引起的形态学变化显着,强烈影响Gd2O3:Eu荧光粉的光致发光效率。 Gd2O3:Eu的相对发射强度随纳米颗粒长径比的增加而降低,而发射率最高的纳米线则观察到最弱的发射。

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